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基于 RNA 切割 DNA 酶催化反应的诱导超敏电化学生物传感器用于 MDA-MB-231 细胞质蛋白靶标检测

Induced ultrasensitive electrochemical biosensor for target MDA-MB-231 cell cytoplasmic protein detection based on RNA-cleavage DNAzyme catalytic reaction.

机构信息

Department of Chemistry, University of Kurdistan, P.O.Box 416, Sanandaj, Iran; Nanotechnology Research Center, University of Kurdistan, P.O.Box 416, Sanandaj, Iran.

Department of Chemistry, University of Kurdistan, P.O.Box 416, Sanandaj, Iran.

出版信息

Biosens Bioelectron. 2023 May 1;227:115168. doi: 10.1016/j.bios.2023.115168. Epub 2023 Feb 18.

Abstract

Herein, we implemented RNA-cleaving DNAzymes specific for the endogenous protein of breast cancer cells (MDA-MB -231) and programmed for electrochemical detection. Thionine-modified gold nanoparticles and modified magnetic nanoparticles are attached to the two ends of the DNAzyme molecule. The prepared probe is pulled to the surface of the electrode with the help of a magnetic field, and the signal caused by the electrochemical activity of thionine is observed on the surface of the electrode. The presence of a covalent gold nanoparticle-thionine hybrid as a highly electroactive/enhanced electrochemical label ensures a strong detection signal. After addition of the enzyme activator cofactor (MDA-MB -231 cytoplasmic cell protein), it reacts with the catalytic core of the enzyme sequence in the DNAzyme molecule and triggers the cleavage reaction in the substrate sequence of the DNAzyme molecule. During this process, the gold nanoparticle-thionine labels are detached from the probe and released into the solution. Inductive removal of gold nanoparticles leads to a decrease in the current related to the reduction of thionine on the electrode surface. The results show that this biosensor can detect this protein marker in the linear range of (1.0E-06 to 1.0E+01) pg/ml, with a detection limit (1.0129E-07 pg/ml), using differential pulse voltammetry as a measuring technique. As well as, electrochemical impedance spectroscopy (EIS).

摘要

在此,我们设计了针对乳腺癌细胞(MDA-MB-231)内源性蛋白的 RNA 切割 DNA 酶,并对其进行了电化学检测编程。硫堇修饰的金纳米粒子和修饰的磁性纳米粒子分别连接在 DNA 酶分子的两端。在磁场的帮助下,将制备的探针拉到电极表面,并在电极表面观察到硫堇电化学活性引起的信号。共价金纳米粒子-硫堇杂化作为高电活性/增强电化学标记物的存在确保了强检测信号。加入酶激活辅因子(MDA-MB-231 细胞质细胞蛋白)后,它与 DNA 酶分子中酶序列的催化核心反应,并触发 DNA 酶分子的底物序列的切割反应。在此过程中,金纳米粒子-硫堇标记物从探针上脱离并释放到溶液中。金纳米粒子的感应去除导致与电极表面上硫堇还原相关的电流降低。结果表明,该生物传感器可以使用差分脉冲伏安法作为测量技术,在(1.0E-06 到 1.0E+01)pg/ml 的线性范围内检测到这种蛋白质标记物,检测限为(1.0129E-07 pg/ml)。以及电化学阻抗谱(EIS)。

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